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Trial Watch: Targeting ATM-CHK2 and ATR-CHK1 pathways for anticancer therapy
Gwenola Manic1, Florine Obrist2, Antonella Sistigu1
1Regina Elena National Cancer Institute ; Rome, Italy.
Abstract:
The ataxia telangiectasia mutated serine/threonine kinase (ATM)/checkpoint kinase 2 (CHEK2, best known as CHK2) and the ATM and Rad3-related serine/threonine kinase (ATR)/CHEK1 (best known as CHK1) cascades are the 2 major signaling pathways driving the DNA damage response (DDR), a network of processes crucial for the preservation of genomic stability that act as a barrier against tumorigenesis and tumor progression. Mutations and/or deletions of ATM and/or CHK2 are frequently found in tumors and predispose to cancer development. In contrast, the ATR-CHK1 pathway is often upregulated in neoplasms and is believed to promote tumor growth, although some evidence indicates that ATR and CHK1 may also behave as haploinsufficient oncosuppressors, at least in a specific genetic background. Inactivation of the ATM-CHK2 and ATR-CHK1 pathways efficiently sensitizes malignant cells to radiotherapy and chemotherapy. Moreover, ATR and CHK1 inhibitors selectively kill tumor cells that present high levels of replication stress, have a deficiency in p53 (or other DDR players), or upregulate the ATR-CHK1 module. Despite promising preclinical results, the clinical activity of ATM, ATR, CHK1, and CHK2 inhibitors, alone or in combination with other therapeutics, has not yet been fully demonstrated. In this Trial Watch, we give an overview of the roles of the ATM-CHK2 and ATR-CHK1 pathways in cancer initiation and progression, and summarize the results of clinical studies aimed at assessing the safety and therapeutic profile of regimens based on inhibitors of ATR and CHK1, the only 2 classes of compounds that have so far entered clinics.
Insights
The ATM/CHK2 and ATR/CHK1 pathways are crucial for DNA damage response and cancer. Inhibitors show promise in sensitizing tumors to therapy, but clinical efficacy requires further demonstration.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- The DNA damage response (DDR) involves ATM/CHK2 and ATR/CHK1 signaling pathways, vital for genomic stability and tumor suppression.
- Mutations in ATM/CHK2 are linked to cancer development, while ATR/CHK1 is often upregulated in tumors, potentially promoting growth.
- Inactivating ATM/CHK2 and ATR/CHK1 pathways sensitizes cancer cells to radiotherapy and chemotherapy.
Purpose of the Study:
- To review the roles of ATM-CHK2 and ATR-CHK1 pathways in cancer.
- To summarize clinical trial results for ATR and CHK1 inhibitors in cancer treatment.
Main Methods:
- Literature review of preclinical and clinical studies.
- Analysis of the roles of ATM, ATR, CHK1, and CHK2 in cancer initiation and progression.
- Summary of clinical trial data on ATR and CHK1 inhibitors.
Main Results:
- ATM/CHK2 pathway alterations are frequent in tumors, predisposing to cancer.
- ATR/CHK1 pathway is often upregulated in neoplasms, potentially promoting tumor growth.
- Inhibitors of ATM, ATR, CHK1, and CHK2 show preclinical promise, sensitizing cancer cells to treatments.
- ATR and CHK1 inhibitors selectively target tumor cells with replication stress or DDR deficiencies.
Conclusions:
- While ATM/CHK2 and ATR/CHK1 pathways are critical in cancer, their inhibition's clinical utility is still under investigation.
- ATR and CHK1 inhibitors have entered clinical trials, with ongoing evaluation of their safety and therapeutic profiles.
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